Broadband multiple resonant metasurface for mixture surface-enhanced infrared absorption based on polarization-sensitive folded nanoantennas

Si Luo, Yunlian Ding, Meiyan Pan, Rujun Zhou, Haichao Han, Zijun Liao, Daru Chen
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Abstract

Multiple resonant metasurfaces for mixture component detection by surface-enhanced infrared absorption in a broadband spectrum region are still highly desirable. This paper presents a polarization-sensitive multi-resonant broadband metasurface in the mid-infrared (MIR) region based on an odd symmetric folded antenna array. Six major resonant modes are effectively excited in 6–15 μm covering the absorption peak of multiple gases and biomolecules. In addition, the calculation indicates the maximum electric field intensity enhancement reaches 3607 and the average electric enhancement factors are dominantly amplified to a maximum of 75.08. The excited multiple hotspots provide more spatial overlap with analytes and would be beneficial for label-free detection. Moreover, owing to the contributions of the intrinsic phonons and polaritons in the ENZ material, the spectroscopy features are relatively stable when changing the geometry parameters and the incident angles, allowing more fabrication tolerance and experiment flexibility. Furthermore, the multiple resonant metasurface is also effectively enabled under orthogonal circular polarizations. Finally, the sensing abilities of the designed metasurface for polyethylene terephthalate and isopropanol molecules have been computationally validated. These results indicate the potential for nanophotonic detection and mixture spectroscopy analysis.
基于偏振敏感折叠纳米天线的用于混合表面增强红外吸收的宽带多谐振元表面
在宽带频谱区通过表面增强红外吸收进行混合物成分探测的多谐振元表面仍然非常需要。本文介绍了一种基于奇对称折叠天线阵列的中红外(MIR)区域偏振敏感多谐振宽带元表面。在 6-15 μm 波长范围内有效激发了六种主要谐振模式,覆盖了多种气体和生物分子的吸收峰值。此外,计算表明,最大电场强度增强达 3607,平均电增强因子显著放大,最大值为 75.08。激发的多个热点与分析物有更多的空间重叠,有利于无标记检测。此外,由于 ENZ 材料中的固有声子和极化子的贡献,在改变几何参数和入射角度时,光谱特征相对稳定,从而提高了制造容差和实验灵活性。此外,在正交圆极化条件下也能有效实现多重共振元表面。最后,通过计算验证了所设计的元表面对聚对苯二甲酸乙二醇酯和异丙醇分子的传感能力。这些结果表明了纳米光子检测和混合物光谱分析的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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